Modular belt with rodless hinge
A rodless system for a modular conveying belt where the studs are inserted into the pivot opening by transversally shifting the module with the studs in relation to the module with the pivot opening.
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The present invention relates to modular belts for use in conveying systems.
BACKGROUND OF THE INVENTIONModular belts are usually constructed from modules that are assembled in a bricklayed manner and hinged together with a pivot rod. A disadvantage of this design is the complexity of the assembly process, which is typically done manually. This complexity results in high assembly costs and an inventory needed for the large number of pivot rods.
Various attempts have been made to eliminate the pivot rods. The primary motivation for eliminating the pivot rods is to reduce cost. Most of the known rodless systems join the modules by clipped links. The clipped systems are sometimes promoted as being easier to assemble and easy to clean.
Most of the clipped systems use molded studs integrated into the link ends on one side of the module to act as a pivot pin. These studs are engaged (or snapped in) through a slotted link on the opposite side of the adjacent module and finally rest in the pivot bore. The slots or gaps, which are provided to introduce the studs into the link, may cause problems for cleaning. Residuals may be collected therein and are difficult to remove.
Accordingly, there is a need for a modular belt with a rodless hinge that overcomes the above mentioned shortcomings.
SUMMARY OF THE INVENTIONThe present invention meets the above described need by providing a rodless system where the studs are inserted into the pivot opening by transversally shifting the module with the studs in relation to the module with the pivot bore.
The invention is illustrated in the drawings in which like reference characters designate the same or similar parts throughout the figures of which:
Referring to
A first plurality of link ends 40 extend from the bottom surface 19 in the direction of belt travel. The link ends 40 have a bottom surface 43; end surfaces 46, 49; side surfaces 52, 55; and a top surface 58 (
A second plurality of link ends 73 extend from the bottom surface 19 in a direction opposite to the first link ends 40. The second link ends 73 have spaces 76 disposed between adjacent link ends 73. The link ends 73 are offset from link ends 40 such that the link ends 40 of an adjacent module 10 fit into the spaces 76 between link ends 73. By intercalating the link ends 40, 73 of adjacent modules 10 as shown in
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While the invention has been described in connection with certain embodiments, it is not intended to limit the scope of the invention to the particular forms set forth, but, on the contrary, it is intended to cover such alternatives, modifications, and equivalents as may be included within the spirit and scope of the invention as defined by the appended claims.
Claims
1. A belt module, comprising:
- an intermediate section;
- a first plurality of link ends extending in a direction of belt travel, the first plurality of link ends having a stud extending therefrom in a direction transverse to the direction of belt travel, the first plurality of link ends having a top surface with a substantially uniform width and having a side surface with a first portion and a second portion, the first portion being wider than the second portion;
- a second plurality of link ends extending in a direction opposite to the first plurality of link ends, the second link ends being offset from the first link ends such that adjacently positioned belt modules are capable of intercalating so that the first link ends of one belt module fit into space defined between the second plurality of link ends of an adjacent belt module, the second plurality of link ends having transverse pivot openings, the second plurality of link ends having a top surface with a substantially uniform width and having a side surface with a first portion and a second portion, the first portion being wider than the second portion;
- wherein the belt module is capable of being assembled with a like adjacent module such that at a first angle the first plurality of link ends are capable of being intercalated into the spaces between the second plurality of link ends of the adjacent module and the module is capable of transversal movement with respect to the adjacent module to insert the studs into the transverse pivot rod openings and at a second angle the modules are prevented from moving far enough in the transversal direction to remove the studs from the transverse pivot rod openings.
2. The belt module of claim 1, wherein adjacent modules can be positioned at an angle to each other such that the side surface on the first plurality of link ends and the side surface on the second plurality of link ends nest in a first position to provide clearance for insertion of the first link ends into the spaces between the second link ends of an adjacent belt module.
3. The belt module of claim 1, wherein rotation of adjacent interconnected modules causes the side surface on the first plurality of link ends and the side surface on the second plurality of link ends to move into a second position such that the first and second link ends are prevented from substantial relative movement in the transverse direction.
4. The belt module of claim 1, wherein the first and second link ends have a bottom surface with a first width and a first end and a second larger width at a second end, the bottom surface of the first link ends and the second link ends of an adjacent module forming a hinge gap that becomes wider as interconnected modules traverse a sprocket.
5. The belt module of claim 1, further comprising a transverse rib disposed on a bottom surface of the intermediate section.
6. The belt module of claim 1, wherein the stud is disposed opposite from the side surface.
7. The belt module of claim 1, further comprising a cover extending from the second plurality of link ends in the transverse direction.
8. The belt module of claim 7, wherein the first plurality of link ends are intercalated with the second plurality of link ends on an adjacent module in pairs, the link pairs being disposed in spaced apart relation in the transverse direction.
9. The belt module of claim 1, wherein the stud is made from a different material than the module.
10. A modular belt, comprising:
- a plurality of first belt modules having an intermediate section, a first plurality of link ends extending in a direction of belt travel, the first plurality of link ends having a stud extending therefrom in a direction transverse to the direction of belt travel, the first plurality of link ends having a top surface with a substantially uniform width and having a side surface with a first portion and a second portion, the first portion being wider than the second portion; a second plurality of link ends extending in a direction opposite to the first plurality of link ends, the second link ends being offset from the first link ends such that adjacently positioned belt modules are capable of intercalating so that the first link ends of one belt module fit into space defined between the second plurality of link ends of an adjacent belt module, the second plurality of link ends having transverse pivot openings, the second plurality of link ends having a top surface with a substantially uniform width and having a side surface with a first portion and a second portion, the first portion being wider than the second portion, wherein the belt module is capable of being assembled with a like adjacent module such that at a first angle the first plurality of link ends are capable of being intercalated into the spaces between the second plurality of link ends of the adjacent module and the module is capable of transversal movement with respect to the adjacent module to insert the studs into the transverse pivot rod openings and at a second angle the modules are prevented from moving far enough in the transversal direction to remove the studs from the transverse pivot rod openings; and,
- a plurality of second belt modules having a plurality of first belt modules having an intermediate section, a first plurality of link ends extending in a direction of belt travel, the first plurality of link ends having a stud extending therefrom in a direction transverse to the direction of belt travel, the first plurality of link ends having a top surface with a substantially uniform width and having a side surface with a first portion and a second portion, the first portion being wider than the second portion; a second plurality of link ends extending in a direction opposite to the first plurality of link ends, the second link ends being offset from the first link ends such that adjacently positioned belt modules are capable of intercalating so that the first link ends of one belt module fit into space defined between the second plurality of link ends of an adjacent belt module, the second plurality of link ends having transverse pivot openings, the second plurality of link ends having a top surface with a substantially uniform width and having a side surface with a first portion and a second portion, the first portion being wider than the second portion, wherein the belt module is capable of being assembled with a like adjacent module such that at a first angle the first plurality of link ends are capable of being intercalated into the spaces between the second plurality of link ends of the adjacent module and the module is capable of transversal movement with respect to the adjacent module to insert the studs into the transverse pivot rod openings and at a second angle the modules are prevented from moving far enough in the transversal direction to remove the studs from the transverse pivot rod openings.
11. The belt module of claim 10, wherein adjacent modules can be positioned at an angle to each other such that the side surface on the first plurality of link ends and the side surface on the second plurality of link ends nest in a first position to provide clearance for insertion of the first link ends into the spaces between the second link ends of an adjacent belt module.
12. The belt module of claim 10, wherein rotation of adjacent interconnected modules causes the side surface on the first plurality of link ends and the side surface on the second plurality of link ends to move into a second position such that the first and second link ends are prevented from substantial relative movement in the transverse direction.
13. The belt module of claim 10, wherein the first and second link ends have a bottom surface with a first width and a first end and a second larger width at a second end, the bottom surface of the first link ends and the second link ends of an adjacent module forming a hinge gap that becomes wider as interconnected modules traverse a sprocket.
14. The belt module of claim 10, further comprising a transverse rib disposed on a bottom surface of the intermediate section.
15. The belt module of claim 10, wherein the stud is disposed opposite from the side surface.
16. The belt module of claim 10, further comprising a cover extending from the second plurality of link ends in the transverse direction.
17. The belt module of claim 16, wherein the first plurality of link ends are intercalated with the second plurality of link ends on an adjacent module in pairs, the pairs being disposed in spaced apart relation in the transverse direction.
18. The belt module of claim 10, wherein the stud is made from a different material than the module.
19. A method of assembling a rodless modular belt, comprising:
- providing a plurality of belt modules having an intermediate section, a first plurality of link ends extending in a direction of belt travel, the first plurality of link ends having a stud extending therefrom in a direction transverse to the direction of belt travel, the first plurality of link ends having a top surface with a substantially uniform width and having a side surface with a first portion and a second portion, the first portion being wider than the second portion, and a second plurality of link ends extending in a direction opposite to the first plurality of link ends, the second link ends being offset from the first link ends such that adjacently positioned belt modules are capable of intercalating so that the first link ends of one belt module fit into space defined between the second plurality of link ends of an adjacent belt module, the second plurality of link ends having transverse pivot openings, the second plurality of link ends having a top surface with a substantially uniform width and having a side surface with a first portion and a second portion, the first portion being wider than the second portion;
- placing a first module adjacent to a second module such that the intermediate sections form an acute angle;
- juxtaposing the first and second module such that the first plurality of link ends of a first module are intercalated with the second plurality of link ends of an adjacent module;
- aligning the studs on the first link ends with the transverse openings on the second link ends of the adjacent module;
- moving the first link ends transverse relative to the second link ends such that the studs enter the transverse openings;
- rotating the first module relative to the second module about the pivot point established by the studs such that the side surface on the first plurality of link ends and the side surface on the second plurality of link ends move into a position such that the first and second link ends are prevented from substantial relative movement in the transverse direction to prevent the studs from exiting from the transverse pivot openings.
20. The method of claim 19, wherein the stud is made from a different material than the module.
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Type: Grant
Filed: Mar 23, 2007
Date of Patent: Apr 22, 2008
Assignee: Habasit AG (Reinach)
Inventors: Marco Lucchi (Muenchestein), Dietmar Elsner (Eimeldingen)
Primary Examiner: Douglas A Hess
Attorney: Hodgson Russ LLP
Application Number: 11/728,113
International Classification: B65G 17/06 (20060101);